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A comprehensive experimental and modeling study of sulfur trioxide formation in oxy-fuel combustion

机译:氧-燃料燃烧中三氧化硫形成的综合实验和模型研究

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This study focuses on the sulfur chemistry occurring within an oxy-combustion system by adopting a combined approach of detailed kinetic modeling and experiments. Influences of variable combustion parameters on SO3 generation have been investigated computationally by implementing different combustion mechanisms. Results indicated significant influences of the equivalence ratio, inlet SO2 concentration and presence of NO on SO3 formation while the inlet O-2 concentration exhibited minimal effect. Presence of NO demonstrated different degrees of direct and indirect interactions between NOx and SOX species for different reaction sets. Sensitivity analysis indicated radicals to be playing a dominant role in SO3 formation. Collected temporal profiles of SO3 from the lab-scale combustion setup showed evidence of significant SO3 formation at temperatures as low as 650 K under realistic boiler temperature conditions. The equivalence ratio and the concentrations of SO2, O-2 and NO were found to influence the SO3 formation. Predictions of final SO3 concentration from different mechanisms were comparable with the experimental data; however, the trend of the temporal profiles could not be anticipated by the models. Experiments conducted in the presence of NO indicated the existence of interactions between NOx and SOx species and also the requirement of modifications to the existing oxy-combustion models. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究通过采用详细的动力学建模和实验相结合的方法,重点研究了氧燃烧系统中发生的硫化学反应。通过实施不同的燃烧机理,已通过计算研究了可变燃烧参数对SO3生成的影响。结果表明当量比,进口SO2浓度和NO的存在对SO3形成有重大影响,而进口O-2浓度的影响最小。 NO的存在证明了NOx和SOX物种在不同反应组之间直接和间接相互作用的程度不同。敏感性分析表明,自由基在SO3的形成中起主要作用。从实验室规模的燃烧装置中收集到的SO3的时间分布图表明,在现实的锅炉温度条件下,低至650 K的温度下会形成大量的SO3。发现当量比和SO2,O-2和NO的浓度会影响SO3的形成。来自不同机理的最终SO3浓度的预测与实验数据相当。但是,模型无法预测时间分布的趋势。在NO存在下进行的实验表明,NOx和SOx物种之间存在相互作用,并且还要求修改现有的氧燃烧模型。 (C)2016 Elsevier Ltd.保留所有权利。

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